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第 6 期                     杨抒, 等: 国内全髋关节置换磨损测试及数值模拟研究进展                                      1017

                 009.                                              study on a method of in vitro preparation and seperation for metallic
            [64]  Wu Jingping, Yuan Chengqing, Yan Xinping. Review and prospect  prosthesis  wear  particles[J].  Orthopedic  Journal  of  China,  2007,
                 of  analysis  on  UHMWPE  wear  debris  in  artificial  hip  joints[J].  15(24): 1888–1892 (in Chinese) [贾庆卫, 汤亭亭, 严孟宁, 等. 人工
                 Journal  of  Biomedical  Engineering,  2010,  27(1):  236–240  关节金属磨损颗粒体外制备分离方法的实验研究[J]. 中国矫形外
                 (in Chinese) [吴竞萍, 袁成清, 严新平. 人工髋关节超高分子量聚          科杂志, 2007, 15(24): 1888–1892]. doi: 10.3969/j.issn.1005-8478.
                 乙烯磨粒分析的现状及趋势[J]. 生物医学工程学杂志, 2010,                 2007.24.016.
                 27(1): 236–240].                              [75]  Jia  Yumei,  Liu  Hongtao,  Cao  Xichuan.  A  study  on  extraction  of
            [65]  Song Jian, Liao Zhenhua, Wang Song, et al. The research progress  artificial joint wear debris enhanced by ultrasonic wave[J]. Journal
                 on the isolation and characterization for the wear debris of artificial  of Heze University, 2013, 35(2): 44–48 (in Chinese) [贾玉梅, 刘洪
                 joints[J]. Tribology, 2016, 36(3): 388–396 (in Chinese) [宋剑, 廖振  涛, 曹希传. 超声辅助法提取人工关节磨屑的实验研究[J]. 菏泽学
                 华, 王松, 等. 人工关节材料磨屑分离与表征的研究进展[J]. 摩擦               院学报, 2013, 35(2): 44–48]. doi: 10.3969/j.issn.1673-2103.2013.02.
                 学 学 报 ,  2016,  36(3):  388–396].  doi:  10.16078/j.tribology.2016.  010.
                 03.017.                                       [76]  Kurtz  S  M.  UHMWPE  biomaterials  handbook  (Version  3)[M].
            [66]  Yuan Chengqing, Jin Zhongmin, Tipper J L, et al. Numerical surface  Oxford: Elsevier LTD, 2009.
                 characterization  of  wear  debris  from  artificial  joints  using  atomic  [77]  Hu Zhengming, Wang Yuanpei, Tian Bo, et al. Wear prediction for
                 force  microscopy[J].  Chinese  Science  Bulletin,  2009,  54(24):  metal-on-metal  hip  joint  replacements[J].  Journal  of  Medical
                 4583–4588. doi: 10.1007/s11434-009-0588-2.        Biomechanics, 2011, 26(5): 448–453 (in Chinese) [胡铮铭, 王元培,
            [67]  Wu  Jingping.  Study  on  UHMWPE  wear  debris  morphology  in  田波, 等. 金属对金属人工髋关节的磨损预测[J]. 医用生物力学,
                 artificial  hip  joints[D].  Wuhan:  Wuhan  University  of  Technology,  2011, 26(5): 448–453]. doi: 10.16156/j.1004-7220.2011.05.012.
                 2009 (in Chinese) [吴竞萍. 人工髋关节UHMWPE磨粒形态研究     [78]  Bao  Yumei,  Xu  Jingshun,  Wu  Lei,  et  al.  Wear  simulation  for
                 [D]. 武汉: 武汉理工大学, 2009].                           artificial  hip  joint  based  on  experimental  model[J].  Journal  of
            [68]  Wu J P, Yan X P, Jin Z M, et al. Application of principal component  Mechanical Strength, 2015, 37(6): 1092–1098 (in Chinese) [鲍雨梅,
                 analysis  and  a  fuzzy  C-means  clustering  algorithm  to  wear  debris  许景顺, 吴蕾, 等. 基于实验模型的人工髋关节磨损仿真[J]. 机械
                 morphology  classification[J].  Proceedings  of  the  Institution  of  强度, 2015, 37(6): 1092–1098]. doi: 10.16579/j.issn.1001.9669.2015.
                 Mechanical  Engineers,  Part  J:Journal  of  Engineering  Tribology,  06.005.
                 2009, 223(7): 1059–1066. doi: 10.1243/13506501jet585.  [79]  Gao L M, Dowson D, Hewson R W. Predictive wear modeling of
            [69]  Ge Shirong, Suo Shuangfu. The computation methods for the fractal  the  articulating  metal-on-metal  hip  replacements[J].  Journal  of
                 dimension  of  surface  profiles[J].  Tribology,  1997,  17(4):  354–362  Biomedical Materials Research. Part B:Applied Biomaterials, 2017,
                 (in Chinese) [葛世荣, 索双富. 表面轮廓分形维数计算方法的研究           105(3): 497–506. doi: 10.1002/jbm.b.33568.
                 [J]. 摩擦学学报, 1997, 17(4): 354–362]. doi: 10.3321/j.issn:1004-  [80]  Kang L, Galvin A L, Brown T D, et al. Quantification of the effect
                 0595.1997.04.011.                                 of cross-shear on the wear of conventional and highly cross-linked
            [70]  Liu Hongtao, Ge Shirong. Description to wear debris boundaries by  UHMWPE[J]. Journal of Biomechanics, 2008, 41(2): 340–346. doi:
                 radar  graph  fractal  method[J].  Chinese  Science  Bulletin,  2007,  10.1016/j.jbiomech.2007.09.005.
                 52(16): 2285–2290. doi: 10.1007/s11434-007-0307-9.  [81]  Liu F, Galvin A, Jin Z, et al. A new formulation for the prediction of
            [71]  Zhang  Lanfeng.  Research  on  biomechanical  properties  and  bio-  polyethylene  wear  in  artificial  hip  joints[J].  Proceedings  of  the
                 tribology  of  cemented  hip  prosthesis  implants[D].  Xuzhou:  China  Institution of Mechanical Engineers. Part H, Journal of Engineering
                 University of Mining and Technology, 2017 (in Chinese) [张岚峰.  in Medicine, 2011, 225(1): 16–24. doi: 10.1243/09544119jeim819.
                 骨水泥型髋关节假体的生物力学特性及其摩擦学研究[D]. 徐州:               [82]  Wang A. A unified theory of wear for ultra-high molecular weight
                 中国矿业大学, 2017].                                    polyethylene in multi-directional sliding[J]. Wear, 2001, 248(1–2):
            [72]  Chen  Ming,  Wang  Chengtao.  Research  progress  of  artificial  joint  38–47. doi: 10.1016/S0043-1648(00)00522-6.
                 wear  particles[C].  Chinese  Mechanical  Engineering  Society,  2000  [83]  Morlock M, Schneider E, Bluhm A, et al. Duration and frequency of
                 (in Chinese) [陈铭, 王成焘. 人工关节磨损颗粒的研究进展[C]. 中        every day activities in total hip patients[J]. Journal of Biomechanics,
                 国机械工程学会, 2000].                                   2001, 34(7): 873–881. doi: 10.1016/S0021-9290(01)00035-5.
            [73]  YY/T  0652-2016  Wear  of  implant  materials-Polymer  and  metal  [84]  Zietz  C,  Fabry  C,  Reinders  J,  et  al.  Wear  testing  of  total  hip
                 wear  particles-Isolation  and  characterization[S].  Beijing:  Standards  replacements under severe conditions[J]. Expert Review of Medical
                 Press of China, 2016 (in Chinese) [YY/T 0652-2016 植入物材料的  Devices,  2015,  12(4):  393–410.  doi:  10.1586/17434440.2015.1050
                 磨损 聚合物和金属材料磨屑分离和表征[S]. 北京: 中国标准出版                 378.
                 社, 2016].                                     [85]  Liu  F,  Fisher  J,  Jin  Z  M.  Effect  of  motion  inputs  on  the  wear
            [74]  Jia  Qingwei,  Tang  Tingting,  Yan  Mengning,  et  al.  Experimental  prediction  of  artificial  hip  joints[J].  Tribology  International,  2013,
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